Modular furniture system
A framework for modular furniture comprises a plurality of structural members interconnected by brackets. The brackets include at least one tubular socket to receive a respective one of the structural members. The sockets have at least one planar face, and an array of holes on the planar face of the socket to permit connection of an attachment to the bracket to support ancillary components. The array of holes is arranged as two parallel rows spaced apart to define a grid.
The present invention relates to a modular furniture system, primarily, though not exclusively for outdoor use.
DESCRIPTION OF THE PRIOR ARTThe benefit of being able to spend time outdoors is well known but in a modern urban environment these benefits are not always readily available. It is recognised that excessive exposure to sun can be detrimental but natural shade is not always available. Similarly, relaxing in a hammock is an idyllic way to enjoy the outdoors but a hammock requires robust support to be safe and this is not always available.
Various attempts have been made to provide an enjoyable outdoor environment, such as pergolas to provide shade and dedicated free standing support frames for hammocks. These are effective but in the case of a pergola it is necessary to construct a dedicated structure that is not readily moved or stored. Whilst kits are available they consist of precut or prefabricated wooden components that require specialised tools and expertise to assemble.
Similarly, the support frame for a hammock is cumbersome and has a significant footprint even when not in use.
It is therefore an object of the present invention to obviate or mitigate the above disadvantages.
SUMMARY OF THE INVENTIONIn general terms, the present invention provides a modular frame work having a plurality of elongate structural members interconnected by brackets. Each of the brackets includes at least one tubular socket to receive a structural member. An array of holes is provided on a face of the socket to permit connection of an attachment to the bracket to support ancillary components.
Preferably, the array of holes is arranged in two parallel rows spaced from one another with the holes in each row uniformly spaced apart to define a grid.
The brackets may also have a plurality of orthogonally disposed sockets with an array of holes on inwardly directed faces of respective sockets.
As a further preference, the sockets are rectilinear in cross section.
An embodiment of the invention will now be described by way of example only with reference to the accompanying drawings in which:
Referring to
Each of the structural members 14 is formed from a dimensional material, typically wood although other materials such as metal or plastics could be used. Preferably, the members 14 are a weather resistant wood in a readily available cross section such as a nominal 4″×4′ pressure treated lumber or cedar. Alternative dimensions may be used, such as a nominal 6″×6″ lumber or an extruded aluminum 2×2 or 3×3 section.
The brackets 16 are formed from metal and have different configurations depending on the number of members 14 to be connected. The brackets 16 have a socket 18 for each of the members to be connected. As can be seen in
Each of the sockets 18 is formed with 4 planar faces 20. Inwardly directed faces, that is those that are directed toward another face, as indicated at 20a, have an array 22 of holes 24 that extend through to the interior of the socket 18. The array 22 is formed by two rows of four holes 24 that are spaced from one another to provide a grid. It will be appreciated of course that other configurations of array could be used.
Referring again to
The array 22 of holes 24 is also used to attach the shade cloth 12 to the framework 10. As can be seen in
In the embodiment of
It will be appreciated that the framework 10 may be easily disassembled for storage and different lengths of structural members used for different situations.
A further embodiment of framework is shown in
The rigidity of the frame work 10 permits a hammock, 50 to be secured to the legs 14a using a collar 52 shown in greater detail in
The collar 52 may be slid along the leg 14a to the required position and screws inserted through the holes 62 to secure the collar in position. Typically, the collar 52 will be located on the leg 14a before assembly of the stringers but mat be retroactively fitted or removed by opening the band 52 to allow the leg 14a to pass between the devises 58. With the collar located and secured at the required height, the hammock 50 mat be attached to the hole 60 in the clevis using a ring or other suitable fastener. The rigid framework 10 provides a secure attachment for the hammock and the array of holes 62 in the faces of the collar 52 ensures a secure location on the legs 14a.
The framework 10 of
In the above embodiments, the framework 10 is freestanding. However, as shown in
Each of the above embodiments has used a shade cloth 12 to provide shade. In the embodiment of
The framework 10 may be used in combination with other frameworks to provide larger structures. As seen in
Similarly, in the embodiment of
The bracket 16 shown in
The feet 40 may be adapted for use on soil or sand by providing spikes extending from the sockets 18, as shown in
The versatility of the framework 10 may be increased by using the connector 80 shown in
A further embodiment of connector 16 is shown in
In each of the above embodiments it will be recognised that the provision of the array of holes in the inwardly directed faces of the connectors 16 permits not only the structural members to be secured to the brackets for a robust framework, but also allows ancillary components, such as hangers and clips to be attached in a simple manner in a variety of orientations to allow attachment of accessories. The grid defined by the two rows of holes 24 allows base plates of accessories such as light fittings to be secured to the connectors and thereby add to the versatility. The framework is readily disassembled and reconfigured for different purposes or for storage.
The brackets 16 are made from steel or aluminum and can be constructed by welding tubular sections to one another or, preferably, by folding a metal blank in to the required configuration. Where the brackets are folded, it is preferred that the free ends of the blank are mechanically interlocked, such as by a dovetail, after folding to maintain the folded blank in the correct configuration for welding the free ends to one another.
Although the invention has been described with reference to certain specific embodiments, various modifications thereof will be apparent to those skilled in the art without departing from the spirit and scope of the invention as outlined in the claims appended hereto. The entire disclosures of all references recited above are incorporated herein by reference.
Claims
1. A bracket for interconnecting a plurality of elongate structural members in to a modular framework, said bracket being formed as a unitary structure and including a plurality of orthogonally disposed tubular sockets each to receive a respective structural member disposed on the longitudinal axis of said socket, each of said tubular sockets having a plurality of planar faces that intersect with adjacent planar faces to define a continuous peripheral wall of said socket, said planar faces including inwardly directed planar faces directed toward a planar face of another socket and outwardly directed planar faces directed away from planar faces of adjacent sockets, each opposed pair of said inwardly directed planar faces on adjacent sockets having an identical array of holes formed thereon with each array having two sets of holes spaced apart laterally, at least one of said sets having a plurality of holes spaced apart longitudinally, said arrays being disposed on said adjacent planar faces to provide two lines of holes extending between said adjacent sockets to permit connection of an attachment either to one hole of each array to extend between adjacent sockets to support ancillary components or connected to two holes of one array to be supported on one socket, each of said outwardly directed planar faces being imperforate to provide a smooth exterior surface for said bracket.
2. The bracket of claim 1 wherein each set of holes is includes a plurality of holes, said sets being arranged in two parallel rows spaced from one another with the holes in each row uniformly spaced apart to define a grid.
3. The bracket of claim 1 wherein each of the sockets are rectangular in cross section.
4. The bracket of claim 3 wherein three sockets are provided on orthogonal axes and each socket has a pair of inwardly directed faces directed to respective inwardly directed faces of the other sockets, each pair of said inwardly directed faces on adjacent sockets having a respective one of said array of holes.
5. The bracket of claim 3 wherein five sockets are provided on orthogonal axes and at least three faces on each socket are inwardly directed to respective faces of the other sockets, each of said three faces having a respective one of said array of holes.
6. A modular framework having a plurality of elongate structural members interconnected by brackets, each of the brackets being formed as a unitary structure and including a plurality of orthogonally disposed tubular sockets, each to receive a respective one of said structural members disposed on the longitudinal axis of said socket, each of said tubular sockets having a plurality of planar faces that intersect with adjacent planar faces to define a continuous peripheral wall of said socket, said planar faces including inwardly directed planar faces directed toward a planar face of an adjacent socket and outwardly directed planar faces directed away from planar faces of adjacent sockets, each opposed pair of said inwardly directed planar faces on adjacent sockets having an identical array of holes formed thereon with each array having two sets of holes spaced apart laterally, at least one of said sets having a plurality of holes spaced apart longitudinally, said arrays being disposed on said adjacent planar faces to provide two lines of holes extending between said adjacent sockets to permit connection of an attachment either to one hole of each array to extend between adjacent sockets to support ancillary components or connected to two holes of one array to be supported on one socket, each of said outwardly directed planar faces being imperforate to provide a smooth exterior surface for said bracket.
7. The framework of claim 6 wherein each set of holes includes a plurality of holes, said sets being arranged in two parallel rows spaced from one another with the holes in each row uniformly spaced apart to define said grid.
8. The framework of claim 7 wherein a hanger extends between at least one pair of opposed planar faces on adjacent sockets and is detachably secured to a hole in each array.
9. The framework of claim 8 wherein a panel is secured to said hanger.
10. The framework of claim 9 wherein said framework has a plurality of vertical posts disposed at corners of a rectangle and longitudinal stringers extending between said posts, said stringers and posts being connected at each corner by a respective one of said brackets.
11. The framework of claim 10 wherein a hanger extends between said planar faces of said sockets connecting said longitudinal members at each of said corners, and said panel is secured at each corner to a respective one of said hangers to provide a roof for said framework.
12. The framework of claim 10 wherein a hanger extends between inwardly directed faces of said sockets connecting a longitudinal member and a post at a pair of adjacent corners, and said panel is secured to each of said hangers and to respective ones of said posts at locations spaced from the brackets to provide a wall for said framework.
13. The framework of claim 10 wherein a panel is connected to each of said posts intermediate opposite ends thereof and extends between said posts at a location spaced from said longitudinal stringers and thereby provide a hammock within said framework.
14. The framework according to claim 13 wherein a collar is provided on each of said posts to provide an attachment point for said panel, said collar extending about respective ones of said posts and adjustable along the post to vary the spacing between said attachment points and said longitudinal stringers and thereby the height of said panel.
15. The framework according to claim 14 wherein said collar has a plurality of planar faces, each of which has an array of holes therein arranged in two sets that are laterally spaced to provide parallel rows spaced from one another, at least one of said sets having a plurality of holes.
16. The framework of claim 14 wherein said collar has a clevis extending inwardly from said post for attachment of said panel.
17. The framework of claim 10 wherein a lower end of each post is secured in a socket having a peripheral flange projecting laterally therefrom.
18. The framework of claim 6 wherein the sockets are rectangular in cross section.
19. The framework of claim 14 wherein said collar is formed from a band extending about said post and a clevis extends inwardly from each end of said band, each of said clevises having a hole therein to provide an attachment point.
20. The framework of claim 19 wherein said collar is formed from interconnected faces that conform to said post and at least one of said interconnected faces has a hole formed therein receive a fastener to secure the collar to said post.
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Type: Grant
Filed: Feb 15, 2018
Date of Patent: Dec 8, 2020
Patent Publication Number: 20190376272
Assignee: 2724889 ONTARIO INC. (Oakville)
Inventor: Jacek Styrc (Oakville)
Primary Examiner: Gisele D Ford
Application Number: 16/485,272
International Classification: E04B 1/19 (20060101); A45F 3/24 (20060101); F16M 11/24 (20060101); E04B 1/26 (20060101); E04F 10/02 (20060101); E04F 10/08 (20060101); E04B 1/00 (20060101); E04B 1/58 (20060101); E04B 1/38 (20060101);